Integration of Modern HPC Performance Tools in Vlasiator for Exascale Analysis and Optimization

  • Camille Coti
  • , Yann Pfau-Kempf
  • , Markus Battarbee
  • , Urs Ganse
  • , Sameer Shende
  • , Kevin Huck
  • , Jordi Rodriquez
  • , Leo Kotipalo
  • , Jennifer Faj
  • , Jeremy J. Williams
  • , Ivy Peng
  • , Allen D. Malony
  • , Stefano Markidis
  • , Minna Palmroth

Résultats de recherche: Chapitre dans un livre, rapport, actes de conférenceParticipation à un ouvrage collectif lié à un colloque ou une conférenceRevue par des pairs

2 Citations (Scopus)

Résumé

Key to the success of developing high-performance applications for present and future heterogeneous supercomputers will be the systematic use of measurement and analysis to understand factors that affect delivered performance in the context of parallelization strategy, heterogeneous programming methodology, data partitioning, and scalable algorithm design. The evolving complexity of future exascale platforms makes it unrealistic for application teams to implement their own tools. Similarly, it is naïve to expect available robust performance tools to work effectively out-of-the-box, without integration and specialization in respect to application-specific requirements and knowledge. Vlasiator is a powerful massively parallel code for accurate magnetospheric and solar wind plasma simulations. It is being ported to the LUMI HPC system for advanced modeling of the Earth's magnetosphere and surrounding solar wind. Building on a preexisting Vlasiator performance API called Phiprof, our work significantly advances the performance measurement and analysis capabilities offered to Vlasiator using the TAU, APEX, and IPM tools. The results presented show in-depth characterization of node-level CPU/GPU and MPI communications performance. We highlight the integration of high-level Phiprof events with detailed performance data to expose opportunities for performance tuning. Our results provide important insights to optimize Vlasiator for the upcoming Exascale machines.

langue originaleAnglais
titre2024 IEEE International Parallel and Distributed Processing Symposium Workshops, IPDPSW 2024
EditeurInstitute of Electrical and Electronics Engineers Inc.
Pages996-1005
Nombre de pages10
ISBN (Electronique)9798350364606
Les DOIs
étatPublié - 2024
Evénement2024 IEEE International Parallel and Distributed Processing Symposium Workshops, IPDPSW 2024 - San Francisco, Etats-Unis
Durée: 27 mai 202431 mai 2024

Série de publications

Nom2024 IEEE International Parallel and Distributed Processing Symposium Workshops, IPDPSW 2024

Conférence

Conférence2024 IEEE International Parallel and Distributed Processing Symposium Workshops, IPDPSW 2024
Pays/TerritoireEtats-Unis
La villeSan Francisco
période27/05/2431/05/24

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